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首页> 外文期刊>Scientific reports. >Formation mechanism of Ruddlesden-Popper-type antiphase boundaries during the kinetically limited growth of Sr rich SrTiO3 thin films
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Formation mechanism of Ruddlesden-Popper-type antiphase boundaries during the kinetically limited growth of Sr rich SrTiO3 thin films

机译:富Sr SrTiO3薄膜动力学受限生长过程中Ruddlesden-Popper型反相边界的形成机理

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We elucidated the formation process for Ruddlesden-Popper-type defects during pulsed laser deposition of Sr rich SrTiO3 thin films by a combined analysis of in-situ atomic force microscopy, low energy electron diffraction and high resolution scanning transmission electron microscopy. At the early growth stage of 1.5 unit cells, the excess Sr results in the formation of SrO on the surface, resulting in a local termination change from TiO2 to SrO, thereby forming a Sr rich (2?×?2) surface reconstruction. With progressive SrTiO3 growth, islands with thermodynamically stable SrO rock-salt structure are formed, coexisting with TiO2 terminated islands. During the overgrowth of these thermodynamically stable islands, both lateral as well as vertical Ruddlesden-Popper-type anti-phase boundaries are formed, accommodating the Sr excess of the SrTiO3 film. We suggest the formation of thermodynamically stable SrO rock-salt structures as origin for the formation of Ruddlesden-Popper-type antiphase boundaries, which are as a result of kinetic limitations confined to certain regions on the surface.
机译:通过原位原子力显微镜,低能电子衍射和高分辨率扫描透射电子显微镜的综合分析,我们阐明了脉冲激光沉积富SrTiO3薄膜过程中Ruddlesden-Popper型缺陷的形成过程。在1.5个晶胞的早期生长阶段,过量的Sr导致表面上形成SrO,从而导致从TiO2到SrO的局部终止变化,从而形成富Sr(2?×?2)的表面。随着SrTiO3的逐步生长,形成了具有热力学稳定的SrO岩石盐结构的岛,并与TiO2封端的岛共存。在这些热力学稳定岛的过度生长期间,形成了横向和垂直Ruddlesden-Popper型反相边界,从而容纳了SrTiO3膜中过量的Sr。我们建议形成热力学稳定的SrO盐岩结构,作为形成Ruddlesden-Popper型反相边界的起源,这是由于动力学限制在表面的某些区域而导致的。

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